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Using MPEG-21 for cross-layer multimedia content adaptation - Springer

机译:使用MPEG-21进行跨层多媒体内容适配-Springer

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This paper presents a cross-layer model— formulated using interoperable description formats—for the adaptation of scalable H.264/MPEG-4 AVC (i.e., SVC) content in a video streaming system operating on a Wireless LAN access network without QoS mechanisms. SVC content adaptation on the server takes place on the application layer using an adaptation process compliant with the MPEG-21 Digital Item Adaptation (DIA) standard, based on input comprised of MPEG-21 DIA descriptions of content and usage environment parameters. The latter descriptions integrate information from different layers, e.g., device characteristics and packet loss rate, in an attempt to increase the interoperability of this cross-layer model, thus making it applicable to other models. For the sake of deriving model parameters, performance measurements from two wireless access point models were taken in account. Throughout the investigation it emerged that the behavior of the system strongly depends on the access point. Therefore, we investigated the use of end-to-end-based rate control algorithms for steering the content adaptation. Simulations of rate adaptation algorithms were subsequently performed, leading to the conclusion that a TFRC-based adaptation technique (TCP-Friendly Rate Control) performs quite well in adapting to limited bandwidth and varying network conditions. In the paper we demonstrate how TFRC-based content adaptation can be realized using MPEG-21 tools.
机译:本文介绍了一种跨层模型,该模型使用可互操作的描述格式制定,用于适应在没有QoS机制的无线LAN接入网络上运行的视频流系统中可伸缩H.264 / MPEG-4 AVC(即SVC)内容。基于包含内容和使用环境参数的MPEG-21 DIA描述的输入,使用符合MPEG-21数字项目适应(DIA)标准的适应过程,在应用程序层上进行服务器上SVC内容的适应。后面的描述集成了来自不同层的信息,例如设备特性和丢包率,以试图增加该跨层模型的互操作性,从而使其可应用于其他模型。为了得出模型参数,考虑了来自两个无线接入点模型的性能测量。在整个调查过程中,发现系统的行为很大程度上取决于访问点。因此,我们研究了使用基于端到端的速率控制算法来指导内容自适应。随后进行了速率自适应算法的仿真,得出的结论是,基于TFRC的自适应技术(TCP友好速率控制)在适应有限的带宽和变化的网络条件下性能非常好。在本文中,我们演示了如何使用MPEG-21工具实现基于TFRC的内容自适应。

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